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Scale-up of B-doped diamond anode system for electrochemical oxidation of phenol simulated wastewater in batch mode

机译:B掺杂金刚石阳极系统的扩大扫描模拟废水的电化学氧化批量模式

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摘要

Scale-up of boron-doped diamond (BDD) anode system is critical to the practical application of electrochemical oxidation in bio-refractory organic wastewater treatment. In this study, the scale-up of BDD anode system was investigated on batch-mode electrochemical oxidation of phenol simulated wastewater. It was demonstrated that BDD anode system was successfully scaled up by 121 times without performance deterioration based on the COD and specific energy consumption (E_(sp)) models in bath mode. The COD removal rate and E_(sp) for the scaled-up BDD anode system through enlarging the total anode area while keeping similar configuration, remained at the similar level as those before being scaled up, under the same area/volume value, current density, retention time and wastewater characteristics. The COD and E_(sp) models used to describe the smaller BDD anode system satisfactorily predicted the performance of the scaled-up BDD anode system. Under the suitable operating conditions, the COD of phenol simulated wastewater was reduced from 540 mg l~(-1) to 130 mg l~(-1) within 3 h with an E_(sp) of only 34.76 kWh m~(-3) in the scaled-up BDD anode system. These results demonstrate that BDD anode system is very promising in practical bio-refractory organic wastewater treatment.
机译:硼掺杂金刚石(BDD)阳极系统的扩展对于电化学氧化在生物难治性有机废水处理中的实际应用至关重要。在该研究中,研究了BDD阳极系统的扩展,对苯酚模拟废水的批量模拟电化学氧化进行了研究。据证明,BDD阳极系统成功扩展121次,而没有基于鳕鱼模式的COD和特定能耗(E_(SP))模型的性能恶化。通过放大保持类似配置的同时放大总阳极区域的缩放BDD阳极系统的COD去除速率和e_(SP)仍然在相似的水平上,与在相同的区域/体积值下,电流密度,保留时间和废水特性。用于描述较小的BDD阳极系统的COD和E_(SP)模型令人满意地预测了缩放BDD阳极系统的性能。在合适的操作条件下,酚模拟废水的鳕鱼在3小时内从540mg l〜(-1)降低到130mg l〜(-1),E_(SP)仅为34.76kWh m〜(-3 )在缩放的BDD阳极系统中。这些结果表明,BDD阳极系统在实际生物难治有机废水处理中非常有前途。

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